首页> 外文会议>AIChE Meeting >EFFECTS OF SEASON AND HEATING MODE ON IGNITION AND BURNING BEHAVIOR OF TEN SPECIES OF LIVE FUEL MEASURED IN A FLAT-FLAME BURNER SYSTEM
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EFFECTS OF SEASON AND HEATING MODE ON IGNITION AND BURNING BEHAVIOR OF TEN SPECIES OF LIVE FUEL MEASURED IN A FLAT-FLAME BURNER SYSTEM

机译:季节和加热模式对平火式燃烧器系统测量的十种活燃料点火和燃烧行为的影响

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The effects of season and heating mode on ignition and burning behavior of living vegetation were studied in a flat-flame burner system with a radiant panel. The goal was to identify what plant characteristics have the greatest influence on burning behavior and to understand the effects of heating mode on ignition and burning. Experiments were performed for ten species over a two-year period, with 25 runs completed each month for each species. A flat flame burner (1000°C, 10 mol% O_2) and radiant panel (50 kW/m~2) provided the convection and radiation sources, respectively. Time-dependent mass, surface temperature and flame characteristics were measured. The effect of moisture content on ignition time varied with species. Ignition time showed a strong dependence on heating mode, with broadleaf species showing a much stronger response to added radiation than non-broadleaf species. No samples exposed to the radiant panel alone ignited. Heating mode and moisture content affected flame characteristics and the relationship depended upon season and species. The observed relationship between ignition time and moisture content did not agree with the relationship observed in wet wood. Moisture content alone did not adequately describe seasonal changes in ignition behavior. However, by including other factors in the prediction model (e.g. surface area and mass), it is possible to predict live-fuel ignition. This implies that plant function plays a role in the burning behavior of live fuels.
机译:在带有辐射板的平焰燃烧器系统中研究了季节和加热模式对生物植被点火和燃烧行为的影响。目标是确定植物特征对燃烧行为最大的影响,并了解加热模式对点火和燃烧的影响。实验在两年内进行十种物种,每种月份为每种月份完成25次运行。扁平火焰燃烧器(1000°C,10mol%O_2)和辐射板(50 kW / m〜2)分别提供了对流和辐射源。测量时间依赖性质量,表面温度和火焰特性。水分含量对点火时间的影响随着物种而变化。点火时间显示出对加热模式的强烈依赖性,具有阔叶物种,显示比非宽宽度物种的添加辐射更强烈的反应。单独出点点燃,没有暴露于辐射板的样品。加热模式和水分含量影响火焰特征和关系依赖于季节和物种。点火时间和水分含量之间观察到的关系与在湿木中观察到的关系不同意。单独的水分含量没有充分描述点火行为的季节性变化。然而,通过包括预测模型中的其他因素(例如表面积和质量),可以预测现场燃料点火。这意味着植物功能在活燃料的燃烧行为中起着作用。

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